首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Effects of frequency on hysteretic heating and fatigue life of unreinforced injection molded polyamide 66 spur gears
【24h】

Effects of frequency on hysteretic heating and fatigue life of unreinforced injection molded polyamide 66 spur gears

机译:频率对未增强注塑聚酰胺66正齿轮的磁滞加热和疲劳寿命的影响

获取原文
获取原文并翻译 | 示例
       

摘要

Gears are subjected to different rotational speeds/frequencies during their service life. The effect of the rotational speed on the performance of a metal gear is insignificant; however, it affects the thickness of the lubricant film. Polymer gears generate hysteretic self-heating because of the viscoelastic behavior of the material, thereby limiting their performance and usage in applications. The injection molded polyamide 66 spur gears were loaded by ground steel gear at different torques and frequencies using in-house realized servo motor driven gear test rig. Bidirectional loads at frequencies 2, 5, and 7.5 Hz and unidirectional loads at double the frequencies (4, 10, and 15 Hz) were applied on the polymer gears. The surface temperature of the gear due to the material hysteretic self-heating was continuously monitored and was recorded using an infrared thermal camera. Torque applied and angular displacement of the gear mesh were acquired to plot a hysteresis loop. The hysteresis loop area and surface temperature increase with the increase in the torque. Moreover, the bidirectional loads induce higher temperature than the unidirectional loads. This is because the gear tooth deflection increases under the bidirectional loads compared to that under the unidirectional loads for the tested frequencies. The fatigue life of the polymer gears was evaluated at higher frequency for different torques and was compared with that obtained at lower frequency. The gears tested at frequencies 15 and 7.5 Hz under unidirectional and bidirectional loads, respectively, exhibited inferior fatigue life compared to that at 10 and 5 Hz under unidirectional and bidirectional loads, respectively, because the temperature of the gear increases (30.6% and 43.7% for unidirectional and bidirectional loads, respectively) at higher frequencies. Both thermomechanical and root crack failures were observed under the bidirectional loads, whereas the gears exhibited only the root crack failures under the unidirectional loads. The failure morphology studied using the scanning electron microscope indicated straight root crack with overlapping fractured surfaces under both the bidirectional and unidirectional loads.
机译:齿轮在使用寿命期间会经受不同的转速/频率。转速对金属齿轮性能的影响微不足道;但是,它会影响润滑膜的厚度。由于材料的粘弹性行为,聚合物齿轮会产生滞后自热,从而限制了它们的性能和在应用中的用途。使用内部实现的伺服电机驱动的齿轮试验台,通过地面钢制齿轮以不同的扭矩和频率加载注塑的聚酰胺66正齿轮。在聚合物齿轮上施加了频率为2、5和7.5 Hz的双向载荷,以及频率为两倍(4、10和15 Hz)的单向载荷。连续监测由于材料滞后自热引起的齿轮表面温度,并使用红外热像仪对其进行记录。获取施加的扭矩和齿轮啮合孔的角位移以绘制磁滞回线。磁滞回线面积和表面温度随着扭矩的增加而增加。而且,双向载荷比单向载荷引起更高的温度。这是因为与测试频率下的单向负载相比,在双向负载下齿轮齿挠度增加。在较高的频率下评估了不同扭矩下的聚合物齿轮的疲劳寿命,并将其与较低频率下的疲劳寿命进行了比较。与分别在单向和双向负载下在10 Hz和5 Hz的频率下分别在15和7.5 Hz频率下测试的齿轮相比,其疲劳寿命较差,这是因为齿轮的温度升高了(30.6%和43.7%)分别用于较高频率的单向和双向负载。双向载荷下均观察到热机械和根部裂纹破坏,而齿轮在单向载荷下仅表现出根部裂纹破坏。使用扫描电子显微镜研究的破坏形态表明,在双向和单向载荷下,直根裂纹均带有重叠的断裂面。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号